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紫云英协同秸秆还田下氮钾减施对双季稻产量及光合特性的影响 被引量:5
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作者 胡柯鑫 罗尊长 +6 位作者 董春华 孙梅 洪曦 谢宜 周旋 刘杰 孙耿 《华北农学报》 CSCD 北大核心 2020年第1期141-148,共8页
为探究化肥氮钾减施配合紫云英秸秆还田对双季稻产量与光合特性的影响。通过田间小区试验,以常规化肥处理(100%化肥)为对照,研究紫云英协同晚稻秸秆还田下早稻减施20%,30%,40%化肥氮和同时减施40%化肥钾对双季稻产量、幼穗分化期倒三叶... 为探究化肥氮钾减施配合紫云英秸秆还田对双季稻产量与光合特性的影响。通过田间小区试验,以常规化肥处理(100%化肥)为对照,研究紫云英协同晚稻秸秆还田下早稻减施20%,30%,40%化肥氮和同时减施40%化肥钾对双季稻产量、幼穗分化期倒三叶叶片净光合速率(Pn)、气孔导度(Gs)、胞间CO2浓度(Ci)、蒸腾速率(Tr)、叶绿素含量(SPAD)及早晚稻收获期土壤理化性质的影响。结果表明:不同氮肥减施比例下紫云英协同晚稻秸秆还田均能增强水稻光合作用,提高土壤肥力,增加水稻年产量,且以减施30%化肥氮、40%化肥钾处理(T4)效果较好。与常规施肥处理相比,T4的水稻年产量增加4.5%,早稻稻谷增产6.8%,倒三叶叶片Pn、Gs、Tr和SPAD值分别降低7.8%,23.9%,21.0%,9.5%,Ci提高19.5%;其晚稻稻谷增产2.0%,倒三叶叶片Pn、Gs、Tr和SPAD值分别提高27.0%,55.3%,14.8%,13.4%,Ci降低1.6%;早晚稻收获期土壤碱解氮、有效磷、速效钾和有机质含量均有提高。研究结果,对指导双季稻田紫云英协同晚稻秸秆还田下化肥氮钾减施、水稻增产和地力提升有重要意义。 展开更多
关键词 双季稻 化肥氮钾减施 紫云英秸秆还田 产量 光合特征
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化肥氮钾优化施用及紫云英、秸秆协同还田下的双季稻生产效益 被引量:1
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作者 董春华 马朝红 +4 位作者 胡柯鑫 何云龙 李万民 褚飞 杨曾平 《湖南农业科学》 2020年第9期19-23,28,共6页
为探讨双季稻化肥氮钾减施技术及效果,通过田间小区试验,研究了双季稻化肥氮钾优化施用及紫云英、秸秆协同还田集成技术对双季稻产量、肥料利用效率、齐穗期剑叶叶片净光合速率(Pn)、气孔导度(Gs)、胞间CO2浓度(Ci)、叶绿素含量(SPAD值... 为探讨双季稻化肥氮钾减施技术及效果,通过田间小区试验,研究了双季稻化肥氮钾优化施用及紫云英、秸秆协同还田集成技术对双季稻产量、肥料利用效率、齐穗期剑叶叶片净光合速率(Pn)、气孔导度(Gs)、胞间CO2浓度(Ci)、叶绿素含量(SPAD值)及晚稻收获期土壤理化性质的影响。结果表明:化肥氮钾优化施用及紫云英、秸秆协同还田集成技术能增强双季稻的光合效率,提高水稻产量,增强土壤生物活性,且以T4处理(紫云英和秸秆还田替代30%化肥氮)的水稻产量、肥料利用效率和净光合速率最高,土壤生物活性最强;与常规施肥处理T2相比,T4处理的2季稻谷总产量增加4.1%,其中早稻和晚稻分别增产6.3%和2.4%,齐穗期剑叶叶片Pn、Gs及SPAD值明显提高,土壤活性有机碳含量和氮碱解氮、有效磷、速效钾含量明显增加。 展开更多
关键词 双季稻 化肥氮钾优化施用 紫云英秸秆协同还田 水稻产量 土壤理化性质
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超级稻田碳氮库管理指数在等养分不同有机物料处理下的动态变化
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作者 王开悦 廖育林 +4 位作者 鲁艳红 蔡岸冬 张志伟 陈旋 秦晓波 《农业环境科学学报》 CAS CSCD 北大核心 2023年第8期1758-1767,共10页
为比较等养分条件下不同有机物料还田对稻田土壤碳氮库管理指数的影响,揭示水稻不同生育期碳氮库管理指数动态变化及其与产量和收获指数的关系,在湖南省长沙市,选择超级稻种植系统为研究对象进行大田试验。共设置5个等养分投入处理,分... 为比较等养分条件下不同有机物料还田对稻田土壤碳氮库管理指数的影响,揭示水稻不同生育期碳氮库管理指数动态变化及其与产量和收获指数的关系,在湖南省长沙市,选择超级稻种植系统为研究对象进行大田试验。共设置5个等养分投入处理,分别为单施化肥(F)、化肥+水稻秸秆全量还田(FS)、化肥+紫云英全量还田(FM)、化肥+秸秆、紫云英全量还田(FMS)、化肥+秸秆、紫云英全量还田+熟石灰(FMS+Ca),并在水稻5个不同生育期(移栽返青期、分蘖期、孕穗期、灌浆期、成熟期)采集土样,测定土壤有机碳(SOC)、可溶性有机碳(DOC)、总氮(TN)、可溶性总氮(TDN)含量,计算碳库管理指数(CPMI)、氮库管理指数(NPMI)。结果表明:不同处理下的CPMI整体动态变化趋势为移栽返青期降低后缓慢回升,在水稻生育末期紫云英-秸秆联合还田处理FMS(87.18)和FMS+Ca(80.59)的CPMI显著高于F处理(62.53)和FS处理(62.64)(P<0.05);NPMI在分蘖期与成熟期出现了两次急剧下降,并在水稻生育末期FMS+Ca处理(57.58)的NPMI显著高于F处理(45.64)和FS处理(42.70)(P<0.05);与F处理相比,有机无机配施(FS、FM、FMS)处理下作物产量提高了2.19%~2.94%;水稻灌浆期的CPMI与产量和收获指数均呈显著正相关关系。研究表明,紫云英还田代替部分化肥施用能在保证产量的基础上扩容稻田土壤碳氮库,紫云英-秸秆联合还田对提升水稻不同生育期CPMI、NPMI的综合效果最佳。 展开更多
关键词 等养分投入 超级稻 紫云英秸秆联合还田 不同生育期 碳库管理指数 氮库管理指数
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Effects of Winter Planting Milk Vetch on Yield and PartialProductivity of Nitrogen Fertilizer of Machine-transplantedDouble-cropping Rice under Straw Returning to the Field 被引量:1
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作者 PAN Xiao-chen LI Chao +5 位作者 TANG Hai-ming XIAO Xiao-ping TANG Wen-guang GUO Li-jun CHENG Kai-kai WANG Ke 《Agricultural Science & Technology》 CAS 2019年第5期6-12,共7页
From 2017 to 2018,the effects of winter planting of milk vetch on yield and partial productivity of nitrogen fertilizer of machine-transplanted double-cropping rice under straw returning were studied in Ningxiang city... From 2017 to 2018,the effects of winter planting of milk vetch on yield and partial productivity of nitrogen fertilizer of machine-transplanted double-cropping rice under straw returning were studied in Ningxiang city,Hunan Province.The results showed that the dry matter accumulation,effective panicle,yield and partial productivity of nitrogen fertilizer in the stem,leaf,panicle and aboveground parts of early and late rice treated with winter planting milk vetch and straw returning were signi ficantly higher than those treated with straw returning only.Among them,the effective panicles of early and late rice increased by 2.58%,3.18%(2017)and 5.22%,6.32%(2018),respectively.Yield increased by 11.85%,10.07%(2017)and 12.42%,10.92%(2018),annual partial productivity of nitrogen fertilizer increased by 10.90%(2017)and 11.66%(2018),respectively.In conclusion,winter planting milk vetch under straw returning is beneficial to increase dry matter accumulation,rice yield and partial productivity of nitrogen fertilizer in mechanized double cropping rice. 展开更多
关键词 Double cropping rice Milk vetch Straw returning to field YIELD Partial productivity of nitrogen fertilizer
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Production Benefits of Double-Cropping Rice Under Optimized Application of Nitrogen and Potassium Fertilizers Combined with Chinese Milk Vetch and Straw Co-Returning to Fields 被引量:3
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作者 DONG Chun-hua MA Chao-hong +4 位作者 HU Ke-xin HE Yun-long LI Wan-min CHU Fei YANG Zeng-ping 《Agricultural Science & Technology》 CAS 2021年第1期17-25,共9页
In order to explore the technology and effects of reducing nitrogen and potassium fertilizer applications in double-cropping rice,a field plot experiment was conducted to study the effects of optimized application of ... In order to explore the technology and effects of reducing nitrogen and potassium fertilizer applications in double-cropping rice,a field plot experiment was conducted to study the effects of optimized application of nitrogen and potassium fertilizers combined with returning Chinese milk vetch and straw to fields on yield,fertilizer utilization efficiency,net photosynthetic rate(Pn),stomatal conductance(Gs),intercellular CO_(2) concentration(Ci),chlorophyll content(SPAD value)and soil physical and chemical properties in late rice harvest period.The results showed that the optimized application of nitrogen and potassium fertilizers combined with the integrated technology of Chinese milk vetch and straw co-returning to the field could enhance the photosynthetic efficiency of double-cropping rice,increase rice yield,and enhance soil biological activity,especially T4 treatment involving the returning of Chinese milk vetch and straw to the field instead of 30%nitrogen fertilizer achieved the highest rice yield,fertilizer use efficiency,net photosynthetic rate and soil biological activity.Compared with the conventional fertilization treatment T2,the total rice yield of T4 treatment increased by 4.1%,among which the early rice and late rice increased by 6.3%and 2.4%,respectively;Pn,Gs and SPAD values of flag leaves at full heading stage significantly increased,and the contents of soil active organic carbon,alkali hydrolyzed nitrogen,available phosphorus and readily available potassium significantly increased. 展开更多
关键词 Double-cropping rice Optimized application of nitrogen and potassium fertilizers Chinese milk vetch and straw co-returning to fields Rice yield Soil physical and chemical properties
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